Glycemic Velocity and Early Retinal Microvascular Change With GLP-1RA Versus SGLT2i Initiation in Type 2 Diabetes (GLIDE)
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Простыми словами
Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.
- Что изучают
- В протоколе указаны: GLP-1 Receptor Agonists, SGLT2 inhibitor.
- Кому может быть актуально
- Состояния в реестре: Type 2 Diabetes Mellitus, Diabetic Retinopathy (DR). Базовые параметры: от 18 лет · Все.
- Что важно проверить
- Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
- Где проводится
- Таиланд
- Следующий шаг
- Сохраните исследование, покажите его лечащему врачу и уточните актуальный статус у исследовательского центра. Расходы, документы и поездка →
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Официальное название
Glycemic Velocity as a Modifiable Determinant of Early Retinal Microvascular and Choroidal Change During Initiation of GLP-1 Receptor Agonist Versus SGLT2 Inhibitor Therapy in Type 2 Diabetes: A Prospective Multimodal Retinal Imaging Cohort Study (the GLIDE Study)
Обзор
The GLIDE study looks at how the small blood vessels of the eye respond during the first months of a new diabetes medicine. Two widely used classes of glucose-lowering drugs, GLP-1 receptor agonists and SGLT2 inhibitors, are compared in adults with type 2 diabetes who have no diabetic retinopathy or only early (mild) diabetic retinopathy. When blood sugar (HbA1c) falls quickly after starting treatment, the retina can undergo a brief, temporary worsening before it stabilizes and benefits over the long term. This study asks whether it is the speed of that blood-sugar reduction, which we call "glycemic velocity," rather than the specific drug, that drives early changes in retinal and choroidal blood flow. Participants are patients whose own physician has decided, independently of the study, to start one of these two drugs for the first time. The study does not choose, provide, or change any medicine; it adds only eye imaging, blood tests, and observation. Each participant is followed with specialized, non-invasive eye scans, optical coherence tomography angiography (OCT-A) and structural/choroidal OCT, together with HbA1c and other measurements, at the start of treatment and again over the following months. The main measurement is the change, from the start of treatment to month 3, in the density of the tiny deep-layer capillaries at the center of the retina, measured on OCT-A. The study will test whether faster HbA1c reduction is linked to greater early change in these vessels and, using statistical mediation analysis, will estimate how much of any difference between the two drug groups is explained by glycemic velocity versus a direct drug effect. If glycemic velocity, a factor physicians can influence by adjusting how quickly treatment is intensified, turns out to drive early retinal change, the findings could guide safer treatment strategies and help identify patients who need closer eye monitoring when starting these medicines.
Подробное описание
Background and rationale:
GLP-1 receptor agonists (GLP-1RAs) and sodium-glucose cotransporter-2 inhibitors (SGLT2is) are central therapies for type 2 diabetes, and their ocular safety remains unresolved. The cardiovascular outcome trial SUSTAIN-6 reported more adjudicated diabetic-retinopathy complications with semaglutide than placebo, concentrated among patients with pre-existing retinopathy and concurrent insulin use, whereas large real-world datasets have not reproduced a consistent signal. Mechanistic and meta-analytic work increasingly attributes the trial signal not to the molecule itself but to the magnitude and rapidity of the accompanying fall in glycated hemoglobin (HbA1c), the long-recognized phenomenon of transient "early worsening" of retinopathy after rapid glycemic correction, first characterized in the Oslo study and subsequently in the DCCT.
Central hypothesis and definition of the exposure:
The study formalizes the driver of early worsening as a continuous, patient-level exposure termed glycemic velocity: the rate at which HbA1c falls after treatment initiation, computed as (HbA1c at baseline - HbA1c at Month 3) divided by elapsed time and expressed in percentage points per month. It is analyzed per +1 SD, with a clinically anchored secondary scale of +0.5 percentage points per month and a pre-specified test for non-linearity or a threshold effect. Baseline HbA1c and the absolute magnitude of HbA1c reduction are retained as separate covariates so that the effect of rate is distinguished from that of magnitude and of starting level. The complementary mechanistic hypothesis is that a transient disturbance of retinal and choroidal perfusion (relative hypoxia) is the shared intermediate underlying GLP-1RA-associated ocular signals, and that its magnitude tracks with glycemic velocity.
Rationale for the design:
Drug choice is made by the treating physician on clinical grounds; the study assigns, provides, and alters no therapy, adding only observation, imaging, and data collection. A new-user, active-comparator structure is used because enrolling only treatment-naive initiators removes prevalent-user and immortal-time biases, while an active comparator rather than non-users minimizes confounding by indication and the healthy-user effect. SGLT2i was selected as the comparator because it shares the glucose-lowering indication and a broadly comparable position in contemporary treatment algorithms, yet is not classically implicated in early retinopathy worsening, providing the contrast needed to separate a drug-specific retinal effect from the drug-independent consequence of rapid glycemic correction. Because glycemic velocity is a continuous measured variable present in both groups, the primary hypothesis remains testable irrespective of how patients were allocated to drug class. Enrollment into each group is capped to preserve balance for the between-group comparison. Both eyes are imaged, with the eye-visit as the unit of observation and statistical accounting for inter-eye correlation.
Visit schedule and data acquisition:
Patients are identified at the point of treatment initiation and referred the same day, or within the permitted baseline window, for screening and baseline imaging. Assessments occur at Baseline (V0), Month 1 (V1, plus or minus 2 weeks), and Month 3 (V2, plus or minus 2 weeks), with a pre-planned companion analysis of longer-term trajectory over an extended follow-up described in the protocol. All imaging is performed on a single OCT-angiography/OCT platform by trained operators using a fixed acquisition protocol, and only scans meeting a pre-specified signal-strength and artifact threshold are analyzed. Quantitative metrics are produced by validated device software, with choroidal indices derived by standardized image binarization. Two independent graders, masked to drug class, glycemic data, and visit sequence, perform ETDRS grading and quality control, with senior adjudication of discrepancies; inter- and intra-grader reliability is quantified on a randomly selected double-graded subset using intraclass correlation coefficients and weighted kappa, against a pre-specified target. Data are captured in REDCap with role-based access rights and a full audit trail, and the metabolic and imaging datasets are reconciled only at the analysis stage.
Sample-size justification:
Enrolment is governed by the between-group contrast in the primary outcome: detecting a difference of 2.0 percentage points (SD 3.5; Cohen's d approximately 0.57) at a two-sided alpha of 0.05 with 80% power requires approximately 49 participants per group. This exceeds the requirement for the primary association (approximately 62 participants for a partial correlation of r = 0.35, by Fisher's z-transformation) and therefore governs, and is inflated by approximately 20% for anticipated attrition and ungradable imaging. Repeated measures and the use of both eyes further increase effective precision. A non-inferential feasibility review after 40 participants complete Month 3 assesses imaging gradability, recruitment rate, and the plausibility of the assumed effect sizes; no efficacy stopping rule applies.
Statistical analysis:
The primary analysis fits a linear mixed-effects model of the primary outcome over time, with the glycemic velocity by time interaction as the principal test, adjusted for drug class and for pre-specified confounders (age, sex, diabetes duration, baseline retinopathy severity, baseline HbA1c, magnitude of HbA1c reduction, blood pressure, eGFR, axial length, and OCT-angiography signal strength), and with random intercepts for participant and for eye nested within participant. The model uses all available eye-visit observations under a missing-at-random assumption. A causal mediation analysis in the counterfactual framework decomposes the total effect of drug class on the primary outcome into a natural indirect effect transmitted through glycemic velocity and a natural direct, unmediated effect; exposure-mediator interaction is permitted, and inference uses bootstrap confidence intervals with E-value sensitivity analysis for unmeasured mediator-outcome confounding. Baseline balance between groups is summarized using standardized mean differences rather than significance tests, and propensity-score methods (overlap weighting or matching) serve as a confounding-control sensitivity analysis. Pre-specified effect modification by baseline retinopathy severity and by insulin co-therapy is tested through interaction terms and interpreted as hypothesis-generating. Analyses follow a statistical analysis plan finalized and signed before database lock, are conducted in R or Stata, and are reported in accordance with STROBE and, for the mediation component, AGReMA.
Вмешательства
- Препарат GLP-1 Receptor Agonists
First-ever GLP-1 receptor agonist initiated as routine clinical care; class and rate of titration are recorded but not controlled by the study. Mapped to Cohort 1. - Препарат SGLT2 inhibitor
First-ever SGLT2 inhibitor initiated as routine clinical care; recorded but not controlled by the study. Mapped to Cohort 2.
Первичные конечные точки
- Change in parafoveal deep-capillary-plexus (DCP) vessel density on OCT angiography [Срок оценки: Baseline to Month 3]
Вторичные конечные точки (8)
- Superficial capillary plexus (SCP) vessel density and perfusion density [Срок оценки: Baseline to Month 3]
- Foveal avascular zone (FAZ) area [Срок оценки: Baseline to Month 3]
- Subfoveal choroidal thickness [Срок оценки: Baseline to Month 3]
- Choroidal vascularity index (CVI) [Срок оценки: Baseline to Month 3]
- Central subfield thickness [Срок оценки: Baseline to Month 3]
- Best-corrected visual acuity (BCVA) [Срок оценки: Baseline to Month 3]
- Proportion of drug-class effect mediated by glycemic velocity [Срок оценки: Baseline to Month 3]
- Diabetic-retinopathy severity step-change (ETDRS) [Срок оценки: Baseline to Month 3]
Критерии участия
Критерии включения
- Adults aged 18 years or older with a documented diagnosis of type 2 diabetes mellitus.
- Clinical decision, made by the treating physician independently of the study, to initiate a first-ever GLP-1 receptor agonist or a first-ever SGLT2 inhibitor.
- Baseline retinal status ranging from no diabetic retinopathy to mild non-proliferative diabetic retinopathy (NPDR) in the study eye(s), confirmed by fundus photography / ETDRS grading.
- Baseline HbA1c within a range permitting a measurable subsequent change (e.g., 7.0% or higher), obtained within 30 days before or after the scheduled ophthalmic assessment.
- Media sufficiently clear and fixation adequate to obtain gradable OCT-A and OCT images.
- Able and willing to provide written informed consent and to attend scheduled follow-up visits.
Критерии исключения
- Moderate-to-severe NPDR, proliferative diabetic retinopathy, or center-involving diabetic macular edema at baseline.
- Prior or concurrent treatment for diabetic retinopathy or maculopathy: pan-retinal or focal/grid laser photocoagulation, intravitreal anti-VEGF or corticosteroid therapy, or vitreoretinal surgery.
- Any prior exposure to a GLP-1 receptor agonist or SGLT2 inhibitor (to preserve the new-user design).
- Type 1 diabetes, latent autoimmune diabetes of adults, or secondary diabetes.
- Other retinal or choroidal disease that would confound microvascular/choroidal measurement: age-related macular degeneration, retinal vein or artery occlusion, uveitis, high myopia (spherical equivalent more negative than -6.0 D or axial length greater than 26.0 mm), or significant media opacity precluding imaging.
- Coexisting glaucoma or optic neuropathy that independently alters retinal vascular or neural metrics.
- Recent (within 3 months) intraocular surgery in the study eye, including cataract surgery.
- Uncontrolled systemic hypertension or a known systemic condition (e.g., significant anemia, severe renal impairment with eGFR < 30 mL/min/1.73 m², or active malignancy) that independently affects retinal perfusion or oximetry, at investigator discretion.
- Pregnancy, or planned simultaneous initiation of insulin such that the index glucose-lowering exposure cannot be attributed (concurrent stable insulin is permitted and recorded as a pre-specified effect modifier).
- Inability to provide informed consent or to comply with the imaging and follow-up schedule.
Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.
Здоровые добровольцы: Нет
Дизайн исследования
- Модель наблюдения
- Когортное
Центры проведения
Таиланд · 1 центр
- Faculty of Medicine, Thammasat University — Pathum Thani
Публикации
- von Elm E, Altman DG, Egger M, Pocock SJ, Gotzsche PC, Vandenbroucke JP; STROBE Initiative. The Strengthening the Reporting of Observational Studies in Epidemiology (STROBE) statement: guidelines for reporting observational studies. Lancet. 2007 Oct 20;370(9596):1453-7. doi: 10.1016/S0140-6736(07)61602-X. PMID 18064739
- Eleftheriadou A, Riley D, Zhao SS, Austin P, Hernandez G, Lip GYH, Jackson TL, Wilding JPH, Alam U. Risk of diabetic retinopathy and diabetic macular oedema with sodium-glucose cotransporter 2 inhibitors and glucagon-like peptide 1 receptor agonists in type 2 diabetes: a real-world data study from a global federated database. Diabetologia. 2024 Jul;67(7):1271-1282. doi: 10.1007/s00125-024-06132-5. PMID 38584180
- Kapoor I, Sarvepalli SM, D'Alessio D, Grewal DS, Hadziahmetovic M. GLP-1 receptor agonists and diabetic retinopathy: A meta-analysis of randomized clinical trials. Surv Ophthalmol. 2023 Nov-Dec;68(6):1071-1083. doi: 10.1016/j.survophthal.2023.07.002. Epub 2023 Jul 16. PMID 37454782
- Early worsening of diabetic retinopathy in the Diabetes Control and Complications Trial. Arch Ophthalmol. 1998 Jul;116(7):874-86. doi: 10.1001/archopht.116.7.874. PMID 9682700
- Bain SC, Klufas MA, Ho A, Matthews DR. Worsening of diabetic retinopathy with rapid improvement in systemic glucose control: A review. Diabetes Obes Metab. 2019 Mar;21(3):454-466. doi: 10.1111/dom.13538. Epub 2018 Oct 15. PMID 30226298
- Marso SP, Bain SC, Consoli A, Eliaschewitz FG, Jodar E, Leiter LA, Lingvay I, Rosenstock J, Seufert J, Warren ML, Woo V, Hansen O, Holst AG, Pettersson J, Vilsboll T; SUSTAIN-6 Investigators. Semaglutide and Cardiovascular Outcomes in Patients with Type 2 Diabetes. N Engl J Med. 2016 Nov 10;375(19):1834-1844. doi: 10.1056/NEJMoa1607141. Epub 2016 Sep 15. PMID 27633186
- Luo Y, Xia Y, Gong X, Hao M, Wei Q, Liao L. GLP-1 receptor agonists in eye disease: a comprehensive review of current research and future potential. BMC Ophthalmol. 2026 Jan 8;26(1):12. doi: 10.1186/s12886-025-04559-x. PMID 41501669
Идентификаторы
NCT: NCT07723820 · MTU-EC-CE-0-208/69